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Interaction of Extracellular Domain 2 of the Human Retina-specific ATP-binding Cassette Transporter (ABCA4) with All-trans-retinal*

机译:人视网膜特异性ATP结合盒式转运蛋白(ABCA4)的胞外域2与全反式视网膜的相互作用*

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摘要

The retina-specific ATP-binding cassette (ABC) transporter, ABCA4, is essential for transport of all-trans-retinal from the rod outer segment discs in the retina and is associated with a broad range of inherited retinal diseases, including Stargardt disease, autosomal recessive cone rod dystrophy, and fundus flavimaculatus. A unique feature of the ABCA subfamily of ABC transporters is the presence of highly conserved, long extracellular loops or domains (ECDs) with unknown function. The high degree of sequence conservation and mapped disease-associated mutations in these domains suggests an important physiological significance. Conformational analysis using CD spectroscopy of purified, recombinant ECD2 protein demonstrated that it has an ordered and stable structure composed of 27 ± 3% α-helix, 20 ± 3% β-pleated sheet, and 53 ± 3% coil. Significant conformational changes were observed in disease-associated mutant proteins. Using intrinsic tryptophan fluorescence emission spectrum of ECD2 polypeptide and fluorescence anisotropy, we have demonstrated that this domain specifically interacts with all-trans-retinal. Furthermore, the retinal interaction appeared preferential for the all-trans-isomer and was directly measurable through fluorescence anisotropy analysis. Our results demonstrate that the three macular degeneration-associated mutations lead to significant changes in the secondary structure of the ECD2 domain of ABCA4, as well as in its interaction with all-trans-retinal.
机译:视网膜特异性ATP结合盒(ABC)转运蛋白ABCA4对于从视网膜棒外段椎间盘转运全反式视网膜至关重要,并且与包括Stargardt病在内的各种遗传性视网膜疾病有关,常染色体隐性隐锥杆营养不良和眼底黄病毒。 ABC转运蛋白的ABCA亚家族的独特特征是存在高度保守的功能未知的长细胞外环或结构域(ECD)。这些结构域中高度的序列保守性和与疾病相关的映射突变表明了重要的生理意义。使用纯化的重组ECD2蛋白的CD光谱进行构象分析,结果表明该蛋白具有有序且稳定的结构,该结构由27±3%的α-螺旋,20±3%的β折叠片和53±3%的螺旋组成。在疾病相关突变蛋白中观察到显着的构象变化。使用ECD2多肽的固有色氨酸荧光发射光谱和荧光各向异性,我们证明了该结构域与全反式视网膜特异性相互作用。此外,视网膜相互作用似乎优先于全反式异构体,并且可以通过荧光各向异性分析直接测量。我们的结果表明,三个与黄斑变性相关的突变导致ABCA4的ECD2域二级结构及其与全反式视网膜的相互作用发生重大变化。

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